WO2007068476A1 - [ (1h- indol- 5 -yl) -heteroaryloxy] - (1-aza-bicyclo [3.3.1] nonanes utilises en tant que ligands cholinergiques de n-achr pour le traitement des troubles psychotiques et neurodegeneratifs. - Google Patents

[ (1h- indol- 5 -yl) -heteroaryloxy] - (1-aza-bicyclo [3.3.1] nonanes utilises en tant que ligands cholinergiques de n-achr pour le traitement des troubles psychotiques et neurodegeneratifs. Download PDF

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Publication number
WO2007068476A1
WO2007068476A1 PCT/EP2006/012023 EP2006012023W WO2007068476A1 WO 2007068476 A1 WO2007068476 A1 WO 2007068476A1 EP 2006012023 W EP2006012023 W EP 2006012023W WO 2007068476 A1 WO2007068476 A1 WO 2007068476A1
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compound
formula
treatment
pharmaceutically acceptable
acid addition
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PCT/EP2006/012023
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English (en)
Inventor
Dominik Feuerbach
Mathias Frederiksen
Konstanze Hurth
Bernard Lucien Roy
Beatrix Wagner
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Novartis Ag
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Priority to CN2006800475199A priority Critical patent/CN101331132B/zh
Priority to DK06846986.5T priority patent/DK1966209T3/da
Priority to BRPI0619888-0A priority patent/BRPI0619888A2/pt
Priority to AU2006326258A priority patent/AU2006326258B2/en
Priority to NZ569013A priority patent/NZ569013A/en
Priority to RU2008128570/04A priority patent/RU2471797C2/ru
Priority to AT06846986T priority patent/ATE529427T1/de
Priority to EP06846986A priority patent/EP1966209B1/fr
Priority to ES06846986T priority patent/ES2375847T3/es
Application filed by Novartis Ag filed Critical Novartis Ag
Priority to CA2631654A priority patent/CA2631654C/fr
Priority to JP2008544876A priority patent/JP5230441B2/ja
Priority to SI200631205T priority patent/SI1966209T1/sl
Priority to PL06846986T priority patent/PL1966209T3/pl
Priority to US12/097,681 priority patent/US7713976B2/en
Publication of WO2007068476A1 publication Critical patent/WO2007068476A1/fr
Priority to IL191841A priority patent/IL191841A/en
Priority to TNP2008000260A priority patent/TNSN08260A1/en
Priority to NO20082937A priority patent/NO20082937L/no
Priority to HK09101356.7A priority patent/HK1121444A1/xx
Priority to US12/732,646 priority patent/US8048885B2/en
Priority to US13/252,608 priority patent/US8637517B2/en
Priority to HR20120030T priority patent/HRP20120030T1/hr
Priority to US14/138,527 priority patent/US20140113908A1/en

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Definitions

  • the present invention relates to novel 1-aza-bicyclononane derivatives, to processes for their production, their use as pharmaceuticals and to pharmaceutical compositions comprising them.
  • X represents hydrogen or hydroxyl
  • Y represents one of the following groups:
  • a preferred compound according to the invention is (4S,5R)-4-[5-(1 H-indol-5-yl)-pyrimidin-2- yloxy]-1-aza-bicyclo[3.3.1]nonane having the formula shown below.
  • a further preferred compound according to the invention is 5- ⁇ 2-[(4S,5R)-(1-aza- bicyclo[3.3.1]non-4-yl)oxy]-pyrimidin-5-yl ⁇ -1 ,3-dihydro-indol-2-one having the formula shown below.
  • a further preferred compound according to the invention is (4S,5R)-4-[6-(1H-indol-5-yl)- pyridin-3-yloxy]-1-aza-bicyclo[3.3.1]nonane having the formula shown below.
  • a further preferred compound according to the invention is (4S,5R)-4-[5-(1H-indol-5-yl)- pyridin-2-yloxy]-1-aza-bicyclo[3.3.1]nonane having the formula shown below.
  • a further preferred compound according to the invention is (4S,5R)-4-[6-(1 H-indol-5-yl)- pyridazin-3-yloxy]-1-aza-bicyclo[3.3.1]nonane having the formula shown below.
  • a further preferred compound according to the invention is 5- ⁇ 6-[(4S,5R)-(1-aza- bicyclo[3.3.1]non-4-yl)oxy]-pyridazin-3-yl ⁇ -1 ,3-dihydro-indol-2-one having the formula shown below.
  • the present invention also provides processes for the production of compounds of formula (I).
  • a first process comprises the steps of i) reacting a compound of formula (IX) wherein Y is as defined above and Z z represents a leaving group, such as Cl 1 Br, I, Tosylate with a compound of formula (X)
  • R represents H , C 1 -C 4 BIkVl or both RO represent together with the B to which they are attached a heterocyclic moiety
  • X is as defined above
  • a second process comprises the steps of i) reacting a compound of formula (Xl)
  • One or more functional groups may need to be protected in the starting materials by protecting groups.
  • the protecting groups employed may already be present in precursors and should protect the functional groups concerned against unwanted secondary reactions, such as acylations, etherifications, esterifications, oxidations, solvolysis, and similar reactions. It is a characteristic of protecting groups that they lend themselves readily, i.e. without undesired secondary reactions, to removal, typically by solvolysis, reduction, photolysis or also by enzyme activity, for example under conditions analogous to physiological conditions, and that they are not present in the end-products.
  • the specialist knows, or can easily establish, which protecting groups are suitable with the reactions mentioned hereinabove and hereinafter.
  • Acid addition salts may be produced from the free bases in known manner, and vice- versa. Alternatively, optically pure starting materials can be used. Suitable acid addition salts for use in accordance with the present invention include for example the hydrochloride.
  • Stereoisomeric mixtures e.g. mixtures of diastereomers, can be separated into their corresponding isomers in a manner known per se by means of suitable separation methods. Diastereomeric mixtures for example may be separated into their individual diastereomers by means of fractionated crystallization, chromatography, solvent distribution, and similar procedures. This separation may take place either at the level of a starting compound or in a compound of formula I itself.
  • Enantiomers may be separated through the formation of diastereomeric salts, for example by salt formation with an enantiomer-pure chiral acid, or by means of chromatography, for example by HPLC, using chromatographic substrates with chiral ligands. Alternatively, optically pure starting materials can be used.
  • Suitable diluents for carrying out the above- described are especially inert organic solvents. These include, in particular, aliphatic, alicyclic or aromatic, optionally halogenated hydrocarbons, such as, for example, benzine, benzene, toluene, xylene, chlorobenzene, dichlorobenzene, petroleum ether, hexane, cyclohexane, dichloromethane, chloroform, carbon tetrachloride; ethers, such as diethyl ether, diisopropyl ether, dioxane, tetrahydrofuran or ethylene glycol dimethyl ether or ethylene glycol diethyl ether; ketones, such as acetone, butanone or methyl isobutyl ketone; nitriles, such as acetonitrile propionitrile or butyronitrile; amides, such as N,N-dimethylformamide, N 1
  • mixtures of diluents may be employed.
  • water or diluents constaining water may be suitable. It is also possible to use one a starting material as diluent simultaneously.
  • Reaction temperatures can be varied within a relatively wide range. In general, the processes are carried out at temperatures between 0 0 C and 150 0 C, preferably between
  • Deprotonation reactions can be varied within a relatively wide range. In general, the processes are carried out at temperatures between -150 0 C and +50 0 C, preferably between -75°C and 0 0 C. f) The reactions are generally carried out under atmospheric pressure. However, it is also possible to carry out the processes according to the invention under elevated or reduced pressure - in general between 0.1 bar and 10 bar.
  • the compounds of the invention exhibit valuable pharmacological properties when tested in vitro and in animals, and are therefore useful as pharmaceuticals.
  • the compound of the invention are found to be cholinergic ligands of the nAChR.
  • preferred compound of the invention show selective ct7-nAChR activity.
  • the compounds of the present invention may in particular be found to be agonists, partial agonists, antagonists or allosteric modulators of the receptor.
  • CNS related diseases due to their pharmacological profiles, compound of the invention are anticipated to be useful for the treatment of diseases or conditions as diverse as CNS related diseases, PNS related diseases, diseases related to inflammation, pain and withdrawal symptoms caused by an abuse of chemical substances.
  • Diseases or disorders related to the CNS include general anxiety disorders, cognitive disorders, learning and memory deficits and dysfunctions, Alzheimer ' s disease (AD), prodromal AD 1 mild cognitive impairment in the elderly (MCI), amnestic MCI 1 age associated memory impairment, attention deficit and hyperactivity disorder (ADHD), Parkinson ' s disease, Huntington's disease, ALS, prionic neuro- degenerative disorders such as Creutzfeld-Jacob disease and kuru disease, Gilles de Ia Tourette's syndrome, psychosis, depression and depressive disorders, mania, manic depression, schizophrenia, the cognitive deficits in schizophrenia, obsessive compulsive disorders, panic disorders, eating disorders, narcolepsy, nociception, AIDS-dementia, senile dementia,
  • compound of the invention may be useful for the treatment of endocrine disorders, such as thyrotoxicosis, pheochromocytoma, hypertension and arrhyth- mias as well as angina pectoris, hyperkinesia, premature ejaculation and erectile difficulty.
  • endocrine disorders such as thyrotoxicosis, pheochromocytoma, hypertension and arrhyth- mias as well as angina pectoris, hyperkinesia, premature ejaculation and erectile difficulty.
  • compound of the invention may be useful in the treatment of inflammatory disorders (Wang et al., Nature 2003, 421 , 384; de Jonge et al., Nature Immunology 2005, 6, 844; Saeed et al., JEM 2005, 7, 1113), disorders or conditions including inflammatory skin disorders, rheumatoid arthritis, post-operative ileus, Crohn's diesease, inflammatory bowel disease, ulcerative colitis, sepsis, fibromyalgia, pancreatitis and diarrhoea.
  • Compound of the invention may further be useful for the treatment of withdrawal symptoms caused by termination of the use of addictive substances, like heroin, cocaine, tobacco, nicotine, opioids, benzodiazepines and alcohol.
  • compound of the invention may be useful for the treatment of pain, e.g. caused by migraine, postoperative pain, phantom limb pain or pain associated with cancer.
  • the pain may comprise inflammatory or neuropathic pain, central pain, chronic headache, pain related to diabetic neuropathy, to post therapeutic neuralgia or to peripheral nerve injury.
  • degenerative ocular disorders which may directly or indirectly involve the degeneration of retinal cells, including ischemic retinopathies in general, anterior ischemic optic neuropathy, all forms of optic neuritis, age- related macular degeneration (AMD), in its dry forms (dry AMD) and wet forms (wet AMD), diabetic retinopathy, cystoid macular edema (CME), retinal detachment, retinitis pigmentosa, Stargardt's disease, Best's vitelliform retinal degeneration, Leber's congenital amaurosis and other hereditary retinal degenerations, pathologic myopia, retinopathy of prematurity, and Leber's hereditary optic neuropathy.
  • ischemic retinopathies in general, anterior ischemic optic neuropathy, all forms of optic neuritis, age- related macular degeneration (AMD), in its dry forms (dry AMD) and wet forms (wet AMD), diabetic retinopathy, cystoid macular e
  • a combination which comprises at least one nicotinic- alpha 7 receptor agonist and at least one compound selected from the group consisting of (a) conventional antipsychotics and (b) atypical antipsychotics is greater than the additive effect of the combined drugs in the treatment of psychiatric disorders.
  • the combinations disclosed herein can be used to treat schizophrenia which is refractory to monotherapy employing one of the combination partners alone.
  • the invention relates to a combination, such as a combined preparation or pharmaceutical composition, which comprises at least one nicotinic-alpha 7 receptor agonist and at least one compound selected from the group consisting of (a) conventional antipsychotics and (b) atypical antipsychotics, in which the active ingredients are present in each case in free form or in the form of a pharmaceutically acceptable salt and optionally at least one pharmaceutically acceptable carrier; for simultaneous, separate or sequential use.
  • a combination such as a combined preparation or pharmaceutical composition, which comprises at least one nicotinic-alpha 7 receptor agonist and at least one compound selected from the group consisting of (a) conventional antipsychotics and (b) atypical antipsychotics, in which the active ingredients are present in each case in free form or in the form of a pharmaceutically acceptable salt and optionally at least one pharmaceutically acceptable carrier; for simultaneous, separate or sequential use.
  • psychiatric disorders includes, but is not limited to schizophrenia, anxiety disorders, depression and bipolar disorders.
  • the psychiatric disorder to be treated with the combination disclosed herein is schizophrenia, more preferably schizophrenia which is refractory to monotherapy employing one of the combination partners alone.
  • conventional antipsychotics includes, but is not limited to haloperidol, fluphenazine, thiotixene and flupentixol.
  • typically antipsychotics includes, but is not limited to Clozaril, risperidone, olanzapine, quetiapine, ziprasidone and aripiprazol.
  • the compound of the invention are used as diagnostic agents and/or PET ligands, e.g. for the identification and localization of nicotine receptors in various tissues.
  • Properly isotope-labeled agents of the invention exhibit valuable properties as histopathological labeling agents, imaging agents and/or biomarkers, hereinafter "markers", for the selective labeling of the nAChR.
  • the agents of the invention are useful as markers for labeling the alpha7 nAChR receptors in vitro or in vivo.
  • compound of the invention which are properly isotopically labeled are useful as PET markers.
  • Such PET markers are labeled with one or more atoms selected from the group consisting of 11 C, 13 N, 15 0, 18 F.
  • the agents of the invention are therefore useful, for instance, for determining the levels of receptor occupancy of a drug acting at the nAChR, or diagnostic purposes for diseases resulting from an imbalance or dysfunction of nAChR, and for monitoring the effectiveness of pharmacotherapies of such diseases.
  • the present invention provides an agent of the invention for use as a marker for neuroimaging.
  • the present invention provides a composition for labeling brain and peripheral nervous system structures involving nAChR//? vivo and in vitro comprising an agent of the invention.
  • the present invention provides a method for labeling brain and peripheral nervous system structures involving nAChR/n vitro or in vivo, which comprises contacting brain tissue with an agent of the invention.
  • the method of the invention may comprise a further step aimed at determining whether the agent of the invention labeled the target structure.
  • Said further step may be effected by observing the target structure using positron emission tomography (PET) or single photon emission computed tomography (SPECT), or any device allowing detection of radioactive radiations.
  • PET positron emission tomography
  • SPECT single photon emission computed tomography
  • the agents of the invention are ⁇ 7 nicotinic acetylcholine receptor ( ⁇ nAChR ⁇ 7) agonists.
  • the agents of the invention display high affinity at the nAChR ⁇ 7 as shown in the following tests:
  • a functional assay for affinity at the nAChR ⁇ 7 is carried out with a rat pituitary cell line stably expressing the nAChR ⁇ 7. Briefly, GH3 cells recombinantly expressing the nAChR ⁇ 7 were seeded 72 h prior to the experiment on black 96-well plates and incubated at 37 0 C in a humidified atmosphere (5 % CO 2 /95 % air). On the day of the experiment medium was removed by flicking the plates and replaced with 100 ⁇ l growth medium containing af fluorescent calcium sensitve dye, in the presence of 2.5 mM probenecid (Sigma).
  • the cells were incubated at 37 0 C in a humidified atmosphere (5 % CO 2 /95 % air) for 1 h. Plates were flicked to remove excess of Fluo-4, washed twice with Hepes-buffered salt solution (in mM: NaC1 130, KCI 5.4, CaCI 2 2, MgSO 4 0.8, NaH 2 PO 4 0.9, glucose 25, Hepes 20, pH 7.4; HBS) and refilled with 100 ⁇ l of HBS containing antagonists when appropriate. The incubation in the presence of the antagonist lasted between 3 and 5 minutes. Plates were then placed into an imaging plate reader and fluorescence signal recordedd In this assay, compound of the invention exhibit pEC 50 values of about 5 to about 9. Partial and potent agonists in this test are preferred.
  • the compound of the invention induce significant sensory gating at concentrations of about 10 to about 40 ⁇ M.
  • the compound of the invention may be shown to increase attention in a test of attention for rodents (Robbins, J. Neuropsychiatry Clin. Neurosci. (2001) 13, 326-35), namely the 5- choice serial reaction time test (5-CSRTT).
  • rodents Robbins, J. Neuropsychiatry Clin. Neurosci. (2001) 13, 326-35)
  • 5- choice serial reaction time test 5-CSRTT
  • the rat must observe a wall containing 5 holes. When a light flash appears in one of them, the rat must respond with a nose-poke into the correct hole within 5 sec. in order to receive a food pellet reward, delivered to a feeder in the opposite wall.
  • Compound of the invention may also show learning/memory enhancing effects in the social recognition and in the object recognition test in mice and rats (Ennaceur and Delacour, Behav. Brain Res. (1988) 31 , 47-59).
  • the compound of the invention are therefore useful for the prevention and treatment (including mitigation and prevention) of various disorders, especially those mentioned above.
  • the usefulness of nAChR ⁇ 7 agonists in neurodegeneration is documented in the literature, e.g. in Wang et al., J. Biol. Chem. 275, 5626-5632 (2000).
  • the appropriate dosage of a compound (active ingredient) of the invention will, of course, vary depending upon, for example, the host, the mode of administration and the nature and severity of the condition being treated as well as the relative potency of the particular agent of the invention employed.
  • the amount of active agent required may be determined on the basis of known in vitro and in vivo techniques, determining how long a particular active agent concentration in the blood plasma remains at an acceptable level for a therapeutic effect.
  • satisfactory results in animals are indicated to be obtained at daily dosages of from about 0.01 to about 30.0 mg/kg p.o.
  • an indicated daily dosage is in the range of from about 0.7 to about 1400 mg/day p.o., e.g.
  • Oral dosage forms accordingly suitably comprise from about 1.75 or 2.0 to about 700 or 1400 mg of a compound of the invention admixed with an appropriate pharmaceutically acceptable diluent or carrier therefore.
  • compositions contain, for example, from about 0.1 % to about 99.9 %, preferably from about 20 % to about 60 %, of the active ingredient(s).
  • compositions comprising a compound of the invention include, for example, a solid dispersion, an aqueous solution, e.g. containing a solubilising agent, a microemulsion and a suspension of, e.g. a salt of a compound of formula I or a free compound of the formula I in the range of from 0.1 to 1 %, e.g. 0.5 %.
  • the composition may be buffered to a pH in the range of, e.g. from 3.5 to 9.5, e.g. to pH 4.5, by a suitable buffer.
  • the compound of the invention are also commercially useful as research chemicals.
  • a compound of the formula I and/or a pharmaceutically acceptable salt thereof may be administered as single active agent or in combination with one or more other active agents of the formula I and/or a pharmaceutically acceptable salt thereof or especially other active agents commonly employed especially for the treatment of the disorders mentioned herein or further other disorders, in any customary manner, e.g. orally, for example in the form of tablets, capsules, or as nasal spray, or parenterally, for example in the form of injection solutions or suspensions.
  • the other active agents employed in such combinations are preferably selected from the group consisting of benzodiazepines, selective serotonin reuptake inhibitors (SSRIs), selective serotonin and norepinephrine reuptake inhibitors (SNRIs), conventional antipsychotics, atypical antipsychotics, buspirone, carbamazepine, oxcarbazepine, gabapentin and pregabalin.
  • SSRIs selective serotonin reuptake inhibitors
  • SNRIs norepinephrine reuptake inhibitors
  • conventional antipsychotics atypical antipsychotics
  • buspirone carbamazepine
  • oxcarbazepine gabapentin and pregabalin.
  • An SSRI suitable for the present invention is especially selected from fluoxetine, fuvoxamine, sertraline, paroxetine, citalopram and escitalopram.
  • An SNRI suitable for the present invention is especially selected from venlafaxine and duloxetine.
  • benzodiazepines as used herein includes, but is not limited to clonazepam, diazepam and lorazepam.
  • conventional antipsychotics as used herein includes, but is not limited to haloperidol, fluphenazine, thiotixene and flupentixol.
  • the term "atypical antipsychotics” as used herein relates to Clozaril, risperidone, olanzapine, quetiapine, ziprasidone and aripiprazol.
  • Buspirone can be administered in free form or as a salt, e.g. as its hydrochloride, e.g., in the form as marketed, e.g. under the trademark BusparTM or BesparTM. It can be prepared and administered, e.g., as described in US 3,717,634. Fluoxetine can be administered, e.g., in the form of its hydrochloride as marketed, e.g. under the trademark ProzacTM. It can be prepared and administered, e.g., as described in CA 2002182.
  • Paroxetine ((3S,4R)-3-[(1,3- benzodioxol-5-yloxy)methyl]-4-(4-fluorophenyl)piperidine) can be administered, e.g., in the form as marketed, e.g. under the trademark PaxilTM. It can be prepared and administered, e.g., as described in US 3,912,743. Sertraline can be administered, e.g., in the form as marketed, e.g. under the trademark ZoloftTM. It can be prepared and administered, e.g., as described in US 4,536,518. Clonazepam can be administered, e.g., in the form as marketed, e.g.
  • Diazepam can be administered, e.g., in the form as marketed, e.g. under the trademark Diazepam DesitinTM.
  • Lorazepam can be administered, e.g., in the form as marketed, e.g. under the trademark TavorTM.
  • Citalopram can be administered in free form or as a salt, e.g. as its hydrobromide, e.g., in the form as marketed, e.g. under the trademark CipramilTM.
  • Escitalopram can be administered, e.g., in the form as marketed, e.g. under the trademark CipralexTM.
  • Venlafaxine can be administered, e.g., in the form as marketed, e.g. under the trademark TrevilorTM.
  • Duloxetine can be administered, e.g., in the form as marketed, e.g. under the trademark CymbaltaTM.
  • Carbamazepine can be administered, e.g., in the form as marketed, e.g. under the trademark TegretalTM or TegretolTM.
  • Oxcarbazepine can be administered, e.g., in the form as marketed, e.g. under the trademark TrileptalTM.
  • Oxcarbazepine is well known from the literature [see for example Schuetz H. et al.,
  • Gabapentin can be administered, e.g., in the form as marketed, e.g. under the trademark NeurontinTM.
  • Haloperidol can be administered, e.g., in the form as marketed, e.g. under the trademark Haloperidol STADATM.
  • Fluphenazine can be administered, e.g., in the form of its dihydrochloride as marketed, e.g. under the trademark ProlixinTM.
  • Thiothixene can be administered, e.g., in the form as marketed, e.g. under the trademark NavaneTM. It can be prepared, e.g., as described in US 3,310,553.
  • Flupentixol can be administered for instance in the form of its dihydrochloride, e.g., in the form as marketed, e.g. under the trademark EmergilTM or in the form of its decanoate, e.g., in the form as marketed, e.g. under the trademark DepixolTM. It can be prepared, e.g., as described in BP 925,538. Clozaril can be administered, e.g., in the form as marketed, e.g. under the trademark LeponexTM. It can be prepared, e.g., as described in US 3,539,573. Risperidone can be administered, e.g., in the form as marketed, e.g.
  • Olanzapine can be administered, e.g., in the form as marketed, e.g. under the trademark ZyprexaTM.
  • Quetiapine can be administered, e.g., in the form as marketed, e.g. under the trademark SeroquelTM.
  • Ziprasidone can be administered, e.g., in the form as marketed, e.g. under the trademark GeodonTM. It can be prepared, e.g., as described in GB 281 ,309.
  • Aripiprazole can be administered, e.g., in the form as marketed, e.g. under the trademark AbilifyTM. It can be prepared, e.g., as described in US 5,006,528.
  • the pharmaceutical compositions for separate administration of the combination partners and/or those for administration in a fixed combination i.e. a single galenical composition comprising at least two combination partners, according to the invent- tion can be prepared in a manner known per se and are those suitable for enteral, such as oral or rectal, and parenteral administration to mammals, including man, comprising a therapeutically effective amount of at least one pharmacologically active combination partner alone or in combination with one or more pharmaceutically acceptable carriers, especially suitable for enteral or parenteral application.
  • compositions for the combination therapy for enteral or parenteral administration are, for example, those in unit dosage forms, such as sugar-coated tablets, tablets, capsules or suppositories, or furthermore ampoules. If not indicated otherwise, these are prepared in a manner known per se, for example by means of conventional mixing, granulating, sugar-coating, dissolving or lyophilizing processes. It will be appreciated that the unit content of a combination partner contained in an individual dose of each dosage form need not in itself constitute an effective amount since the necessary effective amount can instead with a single dosage unit also be reached by administration of a two or more dosage units.
  • a therapeutically effective amount of each of the combination partners may be administered simultaneously or sequentially and in any order, and the components may be administered separately (e.g. sequentially after fixed or variable periods of time), or as a fixed combination.
  • the method of treatment (including mitigation) of a disorder according to the invention may comprise (i) administration of the combination partner (a) (a compound of the present invention) in free or pharmaceutically acceptable salt form and (ii) administration of a combination partner (b) (e.g. a different compound of the present invent- tion or an active ingredient of a different formula) in free or pharmaceutically acceptable salt form, simultaneously or sequentially in any order, in jointly therapeutically effective amounts, preferably in synergistically effective amounts, e.g.
  • administering also encompasses the use of a prodrug of a combination partner that convert in vivo to the combination partner as such.
  • the instant invention is therefore to be understood as embracing all such regimes of simultaneous and/ or alternating treatment and the term “administering" is to be interpreted accordingly.
  • the effective dosage of the combination partners employed may vary, for example depending on the particular compound or pharmaceutical composition employed, the mode of administration, the disorder being treated, and/or the severity of the disorder being treated.
  • the dosage regimen is selected in accordance with a variety of factors including the route of administration, metabolism by and the renal and hepatic function of the patient.
  • a physician, clinician or veterinarian of ordinary skill can readily determine and prescribe the effective amount of the single active ingredients required to prevent, mitigate, counter or arrest the disorder.
  • Optimal precision in achieving concentration of the active ingredients within the range that yields efficacy without toxicity requires a regimen based on the kinetics of the active ingredients' availability to target sites.
  • the present invention also provides:
  • a pharmaceutical composition comprising a compound of the formula I, and/or a pharmaceutically acceptable salt thereof, as active ingredient together with a pharmaceutically acceptable diluent or carrier.
  • a method for the treatment of a disorder comprising administering a pharmaceutically effective amount of a compound of the formula I 1 or a pharmaceutically acceptable salt thereof.
  • a method as defined above comprising co-administration, e.g. concomitantly or in sequence, of a therapeutically effective amount of an alpha-7 agonist of the formula I, and/or a pharmaceutically acceptable salt thereof, and a second pharmaceutically active compound and/or a pharmaceutically acceptable salt thereof, said second pharmaceutically active compound and/or salt thereof being especially for use in the treatment of any one or more of the disorders set forth hereinbefore or hereinafter.
  • a combination comprising a therapeutically effective amount of an alpha-7 agonist of the formula I, and/or a pharmaceutically acceptable salt thereof, and a second pharmaceutically active compound and/or a pharmaceutically acceptable salt thereof, said second pharmaceutically active compound being especially for use or of use in the treatment of any one or more of the particular disorders set forth hereinbefore.
  • THF tetrahydrofuran Temperatures are measured in degrees Celsius. Unless indicated otherwise, reactions are carried out at room temperature. The structure of final products, intermediates and starting materials is confirmed by standard analytical methods, e.g. microanalysis and spectroscopic characteristics (e.g. MS, IR, NMR).
  • the reaction mixture is heated to 120 0 C for 2.5 h, is evaporated and extracted with THF/sat. K 2 CO 3 soln. The aq. layer is reextracted with THF. The combined organic layers are washed with brine, dried over Na 2 SO 4 , filtered and evaporated.
  • the crude product is purified by bulb-to-bulb distillation (HV, 90 0 C) to give 24.07 g (87%) of (4SR,5RS)-acetic acid 1-aza-bicyclo[3.3.1]non-4-yl ester.
  • Acetic acid 1-aza-bicyclo[3.3.1]non-4-yl ester (120.0 g, 655 mmol) is dissolved in 200 ml EtOH abs. and 50 ml water.
  • (4S,5R)-acetic acid 1-aza-bicyclo[3.3.1]non-4-yl ester (5.45 g, 29.7 mmol) is dissolved in 10% aq. NaOH soln. and stirred for 1h at 50 0 C. After cooling to rt, the mixture is extracted with THF/brine. The organic layer is dried over Na 2 SO 4 , filtered and the filtrate is evaporated to give 3.83 g (91%) of (4S 1 5R)-1-aza-bicyclo[3.3.1]nonan-4-ol, which is dissolved in 50 ml THF and cooled to 0°C.
  • NHMDS 35 ml of 1 M THF soln.
  • NHMDS 35 ml of 1 M THF soln.
  • the mixture is stirred at rt for 0.5h and then added to a precooled soln. (-15 0 C) of 5-bromo-2- chloro-pyrimidine (5.89 g, 30.5 mmol) in THF.
  • the mixture is stirred for 15h at rt, then diluted with THF and extracted with 1M aq. NaOH soln. and brine.
  • the aq. layers are 2x reextracted with THF, the combined organic layers are dried over Na 2 SO 4 , filtered and the filtrate is evaporated.
  • example 2 (Manufacture of Soft Capsules) 5000 soft gelatin capsules, each comprising as active ingredient 0.05 g of one of the compounds of formula (I) mentioned in the preceding Examples, are prepared as follows: 250 g of the pulverized active ingredient is suspended in 2 litres Lauroglykol® (propylene glycol laurate, Gattefosse S. A., Saint Priest, France) and ground in a wet pulverizer to produce a particle size of about 1 to 3 ⁇ m. 0.419 g portions of the mixture are then introdu- ced into soft gelatin capsules using a capsule-filling machine.
  • Lauroglykol® propylene glycol laurate, Gattefosse S. A., Saint Priest, France

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Abstract

La présente invention concerne des dérivés de 1-aza-bicycloalkyle répondant à la formule (I) dans laquelle les substituants sont tels que définis dans la description. L’invention concerne également des procédés permettant leur production, des compositions pharmaceutiques les comprenant ainsi que leur utilisation pour la fabrication d’un médicament destiné à traiter et/ ou à retarder la progression de troubles psychotiques et neurodégénératifs.
PCT/EP2006/012023 2005-12-16 2006-12-14 [ (1h- indol- 5 -yl) -heteroaryloxy] - (1-aza-bicyclo [3.3.1] nonanes utilises en tant que ligands cholinergiques de n-achr pour le traitement des troubles psychotiques et neurodegeneratifs. WO2007068476A1 (fr)

Priority Applications (22)

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CA2631654A CA2631654C (fr) 2005-12-16 2006-12-14 [ (1h- indol- 5 -yl) -heteroaryloxy] - (1-aza-bicyclo [3.3.1] nonanes utilises en tant que ligands cholinergiques de n-achr pour le traitement des troubles psychotiques et neurodegeneratifs
SI200631205T SI1966209T1 (sl) 2005-12-16 2006-12-14 ((1H-indol-5-il)-heteroariloksi)-(1-aza-biciklo(3.3.1)nonani kot holinergični ligandi n-AChR za zdravljenje psihotičnih in nevrodegenerativnih motenj
BRPI0619888-0A BRPI0619888A2 (pt) 2005-12-16 2006-12-14 [(1h-indol-5-il)-heteroarilóxi]-(1-aza-biciclo[3.3.1]nona nos como ligantes colinérgicos de n-achr para o tratamento de distúrbios psicóticos e neurodegenerativos
AU2006326258A AU2006326258B2 (en) 2005-12-16 2006-12-14 [ (1H- indol- 5 -yl) -heteroaryloxy] - (1-aza-bicyclo [3.3.1] nonanes as cholinergic ligands of the n-AChR for the treatment of psychotic and neurodegenrative disorders.
NZ569013A NZ569013A (en) 2005-12-16 2006-12-14 [(1H-indol-5-yl)-heteroaryloxy]-1-aza-bicyclo[3.3.1]nonanes as cholinergic ligands of the N-ACHR for the treatment of psychotic and neurodegenerative disorders
RU2008128570/04A RU2471797C2 (ru) 2005-12-16 2006-12-14 [(1н-индол-5-ил)-гетероарилокси]-1-(азабицикло[3.3.1]нонаны, как холинергические лиганды n-achr, предназначенные для лечения психотических и нейродегенеративных нарушений
AT06846986T ATE529427T1 (de) 2005-12-16 2006-12-14 Ä1h-indol-5-yl)-heteroaryloxyü-(1-aza-bicyclo- ä3.3.1ü-nonane als cholinergische liganden des n- achr zur behandlung psychotischer und neurodegenerativer leiden
EP06846986A EP1966209B1 (fr) 2005-12-16 2006-12-14 [ (1h- indol- 5 -yl) -heteroaryloxy] - (1-aza-bicyclo [3.3.1] nonanes utilises en tant que ligands cholinergiques de n-achr pour le traitement des troubles psychotiques et neurodegeneratifs
ES06846986T ES2375847T3 (es) 2005-12-16 2006-12-14 [1h-indol-5-il)heteroariloxi]-(1-aza-biciclo[3.3.1]nonanos como ligandos colinérgicos del n-achr para el tratamiento de trastornos sicóticos y neurodegenerativos.
DK06846986.5T DK1966209T3 (da) 2005-12-16 2006-12-14 [(1H-Indol-5-yl)-heteroaryloxy]-1-aza-bicyclo(3.3.1]nonaner som cholinergiske ligander af nAChR til behandling af psykotiske og neurodegenerative lidelser
JP2008544876A JP5230441B2 (ja) 2005-12-16 2006-12-14 精神病性および神経変性障害の処置のためのn−achrのコリン作動性リガンドとしての[(1h−インドール−5−イル)−ヘテロアリールオキシ]−1−アザ−ビシクロ[3.3.1]ノナン
CN2006800475199A CN101331132B (zh) 2005-12-16 2006-12-14 作为n-achr的胆碱能配体用于治疗精神病和神经变性疾病的[(1h-吲哚-5-基)-杂芳氧基]-(1-氮杂-二环[3.3.1]壬烷
US12/097,681 US7713976B2 (en) 2005-12-16 2006-12-14 [(1H-indol-5-yl)-heteroaryloxy]-1-aza-bicylco[3.3.1]nonanes as cholinergic ligands of the n-AChR for the treatment of psychotic and neurodegenerative disorders
PL06846986T PL1966209T3 (pl) 2005-12-16 2006-12-14 [1H-Indol-5-ilo)-heteroaryloksy]-(1-aza-bicyklo[3.3.1]nonany jako ligandy cholinergiczne dla nAChR do leczenia zaburzeń psychotycznych i neurodegeneracyjnych
IL191841A IL191841A (en) 2005-12-16 2008-05-29 [(1h - indole-5-yl) - heteroaryloxy] - (1-aza-bicyclo [1.3.3]) achr-n cholinergic nonandane for use in the treatment of psychotic and neurodegenerative disorders
TNP2008000260A TNSN08260A1 (en) 2005-12-16 2008-06-13 [ (1h- indol- 5 -yl) -heteroaryloxy] - (1-aza-bicyclo [3.3.1] nonanes as cholinergic ligands of the n-achr for the treatment of psychotic and neurodegenrative disorders
NO20082937A NO20082937L (no) 2005-12-16 2008-06-30 [(1H-indol-5-yl)-heteroaryloksy]-(1-aza-bicyklo[3 3.1]nonaner som kolinergiske ligander av n-AChR for behandling av psykotiske og neurodegenerative lidelser
HK09101356.7A HK1121444A1 (en) 2005-12-16 2009-02-13 [(1h- indol- 5 -yl) -heteroaryloxy] - (1-aza-bicyclo [3.3.1] nonanes as cholinergic ligands of the n-achr for the treatment of psychotic and neurodegenerative disorders
US12/732,646 US8048885B2 (en) 2005-12-16 2010-03-26 Organic compounds
US13/252,608 US8637517B2 (en) 2005-12-16 2011-10-04 Organic compounds
HR20120030T HRP20120030T1 (hr) 2005-12-16 2012-01-10 [(1h-indol-5-il)-heteroariloksi]-(1-aza-biciklo[3.3.1] nonani kao kolinergički ligandi od n-achr za liječenje psihotičkih i neurodegenerativnih poremećaja
US14/138,527 US20140113908A1 (en) 2005-12-16 2013-12-23 [(1h-indol-5-yl) - heteroaryloxy] - (1-aza-bicyclo [3.3.1] nonanes as cholinergic ligands of the n-achr for the treatment of psychotic and neurodegenrative disorders

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WO2014111837A1 (fr) 2013-01-15 2014-07-24 Novartis Ag Utilisation d'agonistes des récepteurs nicotiniques de l'acétylcholine alpha 7
WO2014111838A1 (fr) 2013-01-15 2014-07-24 Novartis Ag Utilisation d'agonistes du récepteur nicotinique alpha 7 de l'acétylcholine
JP2018021042A (ja) * 2013-01-15 2018-02-08 ノバルティス アーゲー アルファ7ニコチン性アセチルコリン受容体アゴニストの使用
US11311525B2 (en) 2013-01-15 2022-04-26 Novartis Ag Use of alpha 7 nicotinic acetylcholine receptor agonists

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MY145627A (en) 2012-03-15
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ATE529427T1 (de) 2011-11-15
TW200732325A (en) 2007-09-01
AU2006326258B2 (en) 2011-06-09
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HRP20120030T1 (hr) 2012-02-29
HK1121444A1 (en) 2009-04-24
EP2361914A1 (fr) 2011-08-31
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IL191841A (en) 2013-11-28
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MA30027B1 (fr) 2008-12-01
CR10056A (es) 2008-08-27
US8048885B2 (en) 2011-11-01
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AR058348A1 (es) 2008-01-30
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US20140113908A1 (en) 2014-04-24
US7713976B2 (en) 2010-05-11
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KR20120018383A (ko) 2012-03-02
IL191841A0 (en) 2008-12-29
EP1966209A1 (fr) 2008-09-10
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US20080293731A1 (en) 2008-11-27
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